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首页> 外文期刊>The Journal of Experimental Biology >Preferred movement patterns during a simple bouncing task
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Preferred movement patterns during a simple bouncing task

机译:简单弹跳任务期间的首选移动方式

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Elastic tissues in the human body can store and return mechanical energy passively, reducing the metabolic cost of cyclical movements. However, it is not clear whether humans prefer movement patterns that optimize this storage and return. We investigated the preferred movement pattern during a bouncing task for which non-invasive techniques can identify the resonant frequency, which is the least metabolically costly. We quantified the preferred and resonant bounce frequencies for three mechanical conditions. During 'normal' trials, subjects bounced while reclined on a sled that moves along a track. During 'added mass' trials, mass was added to the sled. During 'added stiffness' trials, a spring was attached between the sled and the supporting frame, parallel to the track. Subsequently, we quantified the preferred bounce frequencies during ischemia, a technique that disrupts the available sensory feedback. Mechanical condition had a significant effect on both the preferred and resonant frequencies. Changes in preferred frequency scaled with resonant frequency, but the preferred frequency was significantly lower than the resonant frequency. These results indicate that humans adapt their preferred bouncing pattern in response to changes in mechanical condition. Humans may prefer a lower than resonant frequency because of an inability to sense metabolic cost during our relatively short trials. In contrast, during ischemia the preferred bounce frequency remained constant even when mechanical condition was varied, indicating that feedback is necessary to adapt the preferred frequency to changes in mechanics. These findings suggest that disrupted sensory feedback may prevent humans from choosing the optimal movement pattern.
机译:人体中的弹性组织可以被动地存储和返回机械能,从而降低了周期性运动的代谢成本。然而,尚不清楚人类是否喜欢优化这种存储和返回的运动方式。我们研究了在弹跳任务中的首选运动模式,通过该模式非侵入性技术可以识别共振频率,这是代谢成本最低的。我们量化了三种机械条件下的首选和共振反弹频率。在“正常”试验中,受试者斜倚在沿着轨道移动的雪橇上时反弹。在“增加质量”试验期间,质量增加到了雪橇上。在“增加刚度”试验期间,在滑板和支撑架之间平行于轨道安装了一个弹簧。随后,我们量化了缺血期间优选的跳动频率,该技术会破坏可用的感觉反馈。机械条件对首选频率和谐振频率都有重大影响。优选频率的变化与谐振频率成比例,但是优选频率显着低于谐振频率。这些结果表明,人类可以根据机械状况的变化来适应自己喜欢的弹跳模式。由于在我们相对较短的试验中无法感知代谢成本,因此人类可能更喜欢低于共振频率。相反,在缺血过程中,即使机械条件发生变化,首选跳动频率也保持恒定,这表明需要反馈才能使首选频率适应力学变化。这些发现表明,中断的感觉反馈可能会阻止人类选择最佳运动模式。

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